Reduced order modeling for transport phenomena based on proper orthogonal decomposition
smaller than 3.2% if the diameters of the solids particles are in the range of diameters used for POD database generation. Otherwise, the errors
increase up to 10% for the cases presented herein. The computational time of the ROM varied between 25% and 33% of the computational time of the full order solution. The computational speed-up depended on the complexity of the transport phenomena, ROM methodology and reconstruction error. In this thesis, we also investigated the accuracy of the reduced order model based on the POD. When analyzing the accuracy, we used two simple sets of governing partial differential equations: a non-homogeneous Burgers' equation and a system of two coupled Burgers' equations.
Advisor:Cizmas, Paul; Beskok, Ali; Strouboulis, Theofanis
School:Texas A&M University
School Location:USA - Texas
Source Type:Master's Thesis
Keywords:fluidization multiphase flow model reduction proper orthogonal decomposition
ISBN:
Date of Publication:12/01/2003